Cunninghamia lanceolata (Lamb.) Hook. has been widely planted in subtropical China to meet increasing timber demands, leading to short-rotation practices that deplete soil nutrients. However, increased nitrogen (N) deposition offsets soil N depletion. While long-term experimental data investigating the coupled effects related to short rotation practices and increasing N deposition are scarce, applying model simulations may yield insights. In this study, the CenW3.1 model was validated and parameterized using data from pure C. lanceolata plantations. The model was then used to simulate various changes in long-term productivity. Results indicated that responses of productivity of C. lanceolata plantation to increased N deposition were more re...
Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global attenti...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
<p>(A) The stem wood biomass production in tone dry matter per hector (t DM ha<sup>−1</sup>). (B) Th...
Cunninghamia lanceolata (Lamb.) Hook. has been widely planted in subtropical China to meet increasin...
Human activities have resulted in dramatically increased nitrogen (N) deposition worldwide, which is...
Soil nitrogen (N) is frequently limiting forest productivity, especially in plantations. To investig...
<div><p>Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global...
Increasing N deposition caused by intensive anthropogenic activities is expected to affect forest gr...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
In recent decades, anthropogenic activities have increased nitrogen (N) deposition in terrestrial ec...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
In recent decades, anthropogenic activities have increased nitrogen (N) deposition in terrestrial ec...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global attenti...
China has been experiencing a rapid increase in nitrogen (N) deposition due to intensified anthropog...
Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global attenti...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
<p>(A) The stem wood biomass production in tone dry matter per hector (t DM ha<sup>−1</sup>). (B) Th...
Cunninghamia lanceolata (Lamb.) Hook. has been widely planted in subtropical China to meet increasin...
Human activities have resulted in dramatically increased nitrogen (N) deposition worldwide, which is...
Soil nitrogen (N) is frequently limiting forest productivity, especially in plantations. To investig...
<div><p>Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global...
Increasing N deposition caused by intensive anthropogenic activities is expected to affect forest gr...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
In recent decades, anthropogenic activities have increased nitrogen (N) deposition in terrestrial ec...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
In recent decades, anthropogenic activities have increased nitrogen (N) deposition in terrestrial ec...
Nitrogen (N) resorption is a key strategy for conserving N in forests, and is often affected by soil...
Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global attenti...
China has been experiencing a rapid increase in nitrogen (N) deposition due to intensified anthropog...
Nitrogen (N) deposition and its ecological effects on forest ecosystems have received global attenti...
Research Highlights: This study identifies the nitrogen (N) deposition effect on understory plants b...
<p>(A) The stem wood biomass production in tone dry matter per hector (t DM ha<sup>−1</sup>). (B) Th...